Conformational Assembly and Biological Properties of Collagen Mimetic Peptides and Their Thermally Responsive Polymer Conjugates

Conformational Assembly and Biological Properties of Collagen Mimetic Peptides and Their Thermally Responsive Polymer Conjugates
Author :
Publisher :
Total Pages :
Release :
ISBN-10 : 1124782435
ISBN-13 : 9781124782430
Rating : 4/5 (430 Downloads)

Book Synopsis Conformational Assembly and Biological Properties of Collagen Mimetic Peptides and Their Thermally Responsive Polymer Conjugates by : Ohm Divyam Krishna

Download or read book Conformational Assembly and Biological Properties of Collagen Mimetic Peptides and Their Thermally Responsive Polymer Conjugates written by Ohm Divyam Krishna and published by . This book was released on 2011 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Collagens are one of the most abundant proteins found in body tissues and organs, endowing structural integrity, mechanical strength, and multiple biological functions. Destabilized collagen inside human body leads to various degenerative diseases (ex. osteoarthritis) and ageing. This has continued to motivate the design of synthetic peptides and bio-synthetic polypeptides to closely mimic the native collagens in terms of triple helix structure and stability, potential for higher order assembly, and biological properties. However, the widespread application of de novo collagens has been limited in part by the need for hydroxylated proline in the formation of stable triple helical structures. To address this continued need, a hydroxyproline-free, thermally stable collagen-mimetic peptide (CLP-Cys) was rationally designed via the incorporation of electrostatically stabilized amino acid triplets. CLP-Cys was synthesized via solid phase peptide synthesis. The formation and stability of the triple helical structure were indicated via circular dichroism (CD) experiments and confirmed via differential scanning calorimetry (DSC) results. CLP-Cys also self-assembled into nano-rods and micro-fibrils, as evidenced via a combination of dynamic light scattering and transmission electron microscopy. Given the high thermal stability and its propensity for higher-order assembly, CLP-Cys was further functionalized at both the ends with a thermally responsive polymer, poly(diethylene glycol methyl ether methacrylate), (PDEGMEMA) to synthesize a biohybrid triblock copolymer. The CD results indicated that the triple helical form is retained, the thermal unfolding is sustained and helix to coil transition is reversible in the triblock hybrid context. The LCST of PDEGMEMA homopolymer (26 °C) is increased (to 35 °C) upon conjugation to the hydrophilic collagen peptide domain. Further, a combination of static light scattering, Cryo-SEM, TEM and confocal microscopy elucidated that the collapse of the thermo-responsive polymer upon heating (to above the LCST) leads to the assembly of these hybrid materials as micrometer sized spheres. At 75 °C a morphological transformation from spheres to fibrils were observed. These studies provided unique perspectives about the impact of stimuli-responsive polymers and the triple-helix forming peptides on each other; and how temperature as a stimulus can be employed to sequentially guide the assembly. The development of self-assembling hybrid materials with multiple sensitivities to temperature would offer useful opportunities in the design of stimuli-responsive nano-materials. The CLP-Cys peptide sequence has been designed to incorporate biologically relevant amino acid triplets (GEKGER) and its positive impact was seen via recruitment of human mesenchymal stem cells (hMSCs) for adhesion, spreading and proliferation on CLP-Cys functionalized glass and hyaluronic acid based hydrogel surfaces. Therefore, the prospects of these materials in biomedical applications including wound healing and tissue engineering are promising.


Conformational Assembly and Biological Properties of Collagen Mimetic Peptides and Their Thermally Responsive Polymer Conjugates Related Books

Conformational Assembly and Biological Properties of Collagen Mimetic Peptides and Their Thermally Responsive Polymer Conjugates
Language: en
Pages:
Authors: Ohm Divyam Krishna
Categories: Biomedical materials
Type: BOOK - Published: 2011 - Publisher:

DOWNLOAD EBOOK

Collagens are one of the most abundant proteins found in body tissues and organs, endowing structural integrity, mechanical strength, and multiple biological fu
Conformation in Biology and Drug Design
Language: en
Pages: 516
Authors: Sidney Udenfriend
Categories: Science
Type: BOOK - Published: 2014-05-10 - Publisher: Elsevier

DOWNLOAD EBOOK

The Peptides: Analysis, Synthesis, Biology, Volume 7: Conformation in Biology and Drug Design focuses on the analysis of peptides, emphasizing the use of physic
Peptide-Based Materials
Language: en
Pages: 184
Authors: Timothy Deming
Categories: Technology & Engineering
Type: BOOK - Published: 2012-01-13 - Publisher: Springer Science & Business Media

DOWNLOAD EBOOK

Synthesis of Polypeptides by Ring-Opening Polymerization of α-Amino Acid N-Carboxyanhydrides, by Jianjun Cheng and Timothy J. Deming.- Peptide Synthesis and Se
Collagen Mimetic Peptides and Their Biophysical Characterization
Language: en
Pages: 0
Authors: Jianxi Xiao
Categories: Science
Type: BOOK - Published: 2024-09-21 - Publisher: Springer

DOWNLOAD EBOOK

This book embarks on an enlightening journey through the molecular landscape of collagen mimic peptides, shedding light on their significance and potential. In
Self-Assembly
Language: en
Pages: 364
Authors: Ramanathan Nagarajan
Categories: Science
Type: BOOK - Published: 2019-01-07 - Publisher: John Wiley & Sons

DOWNLOAD EBOOK

An introduction to the state-of-the-art of the diverse self-assembly systems Self-Assembly: From Surfactants to Nanoparticles provides an effective entry for ne